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Generation of Ventricular-Like HiPSC-Derived Cardiomyocytes and High-Quality Cell Preparations for Calcium Handling Characterization
Published on: January 17, 2020
Modeling incomplete penetrance in arrhythmogenic cardiomyopathy by human induced pluripotent stem cell derived
Marzia De Bortoli1, Viviana Meraviglia1,2, Katarina Mackova1
1Institute for Biomedicine (Affiliated to the University of Lübeck), Eurac Research, Bolzano, Italy.
Insights
Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) model arrhythmogenic cardiomyopathy (ACM) with incomplete penetrance. hiPSC-CMs revealed molecular and functional differences between affected patients and asymptomatic carriers, aiding disease mechanism studies.
Area of Science:
- Cardiology
- Genetics
- Stem Cell Biology
Background:
- Arrhythmogenic cardiomyopathy (ACM) is an inherited cardiac disease with variable clinical presentations due to incomplete penetrance.
- Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) are valuable for modeling genetic heart diseases.
Purpose of the Study:
- To investigate the utility of hiPSC-CMs in studying incomplete penetrance in ACM.
- To identify molecular and functional differences between ACM patients and asymptomatic carriers.
Main Methods:
- Generated hiPSC lines from ACM patients, asymptomatic carriers, and a healthy control from the same family.
- Utilized whole exome sequencing, ddPCR, western blot, Wes™ immunoassay, patch clamp, immunofluorescence, and RNASeq for analysis.
Main Results:
- ACM hiPSC-CMs exhibited higher mutated PKP2 mRNA and intracellular lipid accumulation compared to asymptomatic carriers.
- Lower connexin-43 expression and sodium current density were observed in ACM hiPSC-CMs.
- Sarcomere disorganization and differentially expressed genes related to fatty phenotype were found in ACM hiPSC-CMs.
Conclusions:
- hiPSC-CMs effectively model incomplete penetrance in ACM.
- Identified distinct molecular and functional characteristics differentiating ACM patients from asymptomatic carriers.
Abstract:
Human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CMs) are commonly used to model arrhythmogenic cardiomyopathy (ACM), a heritable cardiac disease characterized by severe ventricular arrhythmias, fibrofatty myocardial replacement and progressive ventricular dysfunction. Although ACM is inherited as an autosomal dominant disease, incomplete penetrance and variable expressivity are extremely common, resulting in different clinical manifestations. Here, we propose hiPSC-CMs as a powerful in vitro model to study incomplete penetrance in ACM. Six hiPSC lines were generated from blood samples of three ACM patients carrying a heterozygous deletion of exon 4 in the PKP2 gene, two asymptomatic (ASY) carriers of the same mutation and one healthy control (CTR), all belonging to the same family. Whole exome sequencing was performed in all family members and hiPSC-CMs were examined by ddPCR, western blot, Wes™ immunoassay system, patch clamp, immunofluorescence and RNASeq. Our results show molecular and functional differences between ACM and ASY hiPSC-CMs, including a higher amount of mutated PKP2 mRNA, a lower expression of the connexin-43 protein, a lower overall density of sodium current, a higher intracellular lipid accumulation and sarcomere disorganization in ACM compared to ASY hiPSC-CMs. Differentially expressed genes were also found, supporting a predisposition for a fatty phenotype in ACM hiPSC-CMs. These data indicate that hiPSC-CMs are a suitable model to study incomplete penetrance in ACM.
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